Silva, Ana TeresaOliveira, Isabel S.Gomes, Joana M.Aguiar, LuísaFontinha, DianaDuarte, Denise Maria Figueiredo AraújoNogueira, FátimaPrudêncio, MiguelMarques, Eduardo F.Teixeira, Cátia A. S.Ferraz, RicardoGomes, Paula2023-06-162023-06-162023-01-031860-7179PURE: 61130870PURE UUID: 85469fdd-b032-42cc-baea-e03d2a87f736PubMed: 36480787Scopus: 85143608295WOS: 000895458900001ORCID: /0000-0003-0313-0778/work/151409102http://hdl.handle.net/10362/154056Scheme 1 and Figure 1 in this article were incorrect. The correct ones, and their respective captions, follow: 1 Scheme (Figure presented.) Synthesis route to PQ-derived organic salts 3a–g. (i) 1a (1 molar equivalent, eq), 2a–g (1 eq), methanol (MeOH), room temperature (RT), 30 min. 1 Figure (Figure presented.) Surface tension plots and cmc determination, at 25 °C, of aqueous CTAB/SAIL mixtures: A) surface tension vs. the logarithm of total CTAB+SAIL concentration, expressed in molality; the cmc values are obtained from the intersection points of the linear fit in each system; B) cmc vs. molar fraction of 3c in mixtures with CTAB, showing the marked effect of 3c in reducing cmc.417435engAntimalarialPlasmodiumSAILblood-stagefatty acidionic liquidliver-stagesurface activityRM Therapeutics. PharmacologyRA0421 Public health. Hygiene. Preventive MedicineQR MicrobiologyDrug DiscoveryMolecular MedicineBiochemistryPharmacology, Toxicology and Pharmaceutics(all)PharmacologyOrganic ChemistrySDG 3 - Good Health and Well-beingSDG 9 - Industry, Innovation, and InfrastructureCorrigendum toother10.1002/cmdc.202200589Drug-Derived Surface-Active Ionic Liquids: A Cost-Effective Way To Expressively Increase the Blood-Stage Antimalarial Activity of Primaquine (ChemMedChem, (2022), 17, 5, 10.1002/cmdc.202100650)https://www.scopus.com/pages/publications/85143608295https://www.scopus.com/pages/publications/85143608295